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L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators

MOQ: 1 Tons
Price: 800-1000 USD/Tons
Standard Packaging: In bundles or in wooden boxes.
Delivery Period: 20-30days upon products
Payment Method: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Capacity: 60000 Ton/Tons per Year
Detail Information
Place of Origin
Zhejiang/China
Brand Name
TORICH
Certification
ISO9001, ISO14001, TS16949
Model Number
L Finned Tube
Application:
Industrial Radiators
Technique:
Hot Rolled,Cold Drawn,Cold Rolled,TIG Welded/ Plasma Welded
Thickness:
0.6 - 50.0 Mm
Standard:
ASTM,DIN,JIS,GB,API
Alloy Or Not:
Non-alloy
Section Shape:
Round
Secondary Or Not:
Non-secondary
Outer Diameter(round):
10.3 - 813 Mm
Special Pipe:
Boiler Tubes
Grade:
A179 A192 P235 20G
Material:
Carbon Steel Tube
Type:
Heat Exchanger Tube
Length:
5.8m 8m 12m Uased Frequently Or Customized,6 Meters Or As Customers Request
Product Description

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 0

 

L-Footed Fin Tubing (Carbon Steel) for Industrial Radiators

Material Overview

This product is a helical finned tube featuring an “L-foot” style fin (also called L-type/wrap-on fin) wound around a carbon steel base tube. The fin foot forms an L-shaped contact on the tube surface, providing robust mechanical contact between fin and tube and hence enhanced heat transfer and corrosion resistance.
It is used as a heat‐exchange element in industrial radiators, air coolers, condensers, waste heat recovery units, etc., where a fluid (liquid or gas) inside the tube transfers heat to air or another external medium via the finned outer surface.

Specifications

Typical specification ranges (for L-foot / L-type fin tubes) are as follows:

  • Tube outside diameter (OD): ~ 19 mm to ~ 51 mm (≈ ¾″ to 2″)

  • Wall thickness of base tube: depends on OD but for carbon steel heat exchanger tube, e.g. ASTM A179 seamless cold-drawn, typical minimum wall ~2.4 mm for 25.4 mm OD.

  • Fin height: typically 10 mm to 16 mm (≈0.4″ to 0.63″)

  • Fin thickness: typically ~0.3 mm to ~0.5 mm (≈0.012″ to 0.02″)

  • Fin pitch (spacing): e.g., 3 FPI to 11 FPI (fins per inch) ≈ 100 to 433 fins per meter.

  • Tube length: up to 22 000 mm (≈72 ft) in some manufacturers.

  • Typical base tube carbon steel grades: SA179, SA192, SA210A1/C, SA106Gr.B.

Major Features

  • High heat‐transfer efficiency: The L-foot fin significantly increases outer surface area and creates a strong bond with the base tube, enhancing conduction from tube to fin and convection from fin to outside medium.

  • Compact design: Because the fin increases surface area, fewer tubes (or smaller radiator volume) can achieve required heat duty compared to bare tubes.

  • Enhanced bonding & durability: The “L” foot provides stronger mechanical attachment of fin to tube than simple welded or wrapped fins, better resisting fin loosening under thermal cycling or vibration.

  • Good corrosion/erosion resistance on outer fin foot: The fin foot wraps securely around the base tube and helps protect the tube from outer‐side attack in some installations.

  • Flexibility for industrial radiator applications: Suitable for fluids such as hot water, steam, thermal oil, and gases cooled by ambient air, fans, or ducts.

Our Advantages

Here are key customer concerns and how our offering addresses them:

  • Concern: Heat transfer performance / surface area
    Advantage: Our L-foot finned tubes maximize the fin-foot contact area and ensure consistent fin geometry (height, thickness, pitch) which translates to higher outer surface area per unit length and stronger conduction to the fin. This yields measurable efficiency improvements compared to standard wrapped fins.

  • Concern: Long‐term fin integrity under thermal cycling / vibration
    Advantage: The mechanical interlock of the L-foot design resists fin loosening and fatigue better. Our manufacturing uses tight process control to maintain fin bond strength and alignment, reducing maintenance and downtime.

  • Concern: Corrosion / coating / environment aggressiveness
    Advantage: We offer carbon steel base tube with L-foot fins of options (aluminum, or carbon steel fin material) and can also provide protective coatings or surface treatments. The L-foot design assists in protecting the tube outer surface. For more aggressive environments we can recommend LL-type, KL-type or other advanced fin types.

  • Concern: Custom geometry and radiator integration (tube length, fin height, spacing)
    Advantage: We support flexible customization of diameter, wall thickness, fin height/pitch, plain ends, U-bends, lengths up to ~22 m, based on your radiator layout or exchanger module design.

  • Concern: Standards & quality assurance
    Advantage: Our base tube material meets known standards (e.g., ASTM A179) with documented chemical and mechanical properties, and the finning process is traceable. We provide material certificates, test reports (flattening, flaring, hydrostatic, hardness) as required under the relevant standards.

Chemical Composition

Grade C % Mn % P % (max) S % (max)
ASTM A179 (SA179) 0.06–0.18 0.27–0.63 ≤ 0.035 ≤ 0.035
ASTM A192 (SA192) ~similar range* * * *
ASTM A210 Gr A1 (SA210A1) low C similar to SA179
EN 10216-2 P235TR1 ~0.17 (C) ~1.4 (Mn) ≤ 0.025 ≤ 0.015
GB/T 3087 20G ~0.17 ~1.4 ≤0.035 ≤0.035

* Exact composition ranges vary with sub-grades.

Mechanical Properties

Grade Tensile Strength (min) Yield Strength (min) Elongation (min) Hardness (max) Standard
ASTM A179 ≥ 325 MPa ≥ 180 MPa ≥ 35 % HRB ≤ 72 ASTM
ASTM A192 TS ~340-440 MPa ASTM
ASTM A210 Gr A1 TS ≥ 415 MPa YS ≥ 240 MPa ASTM
EN 10216-2 P235TR1 TS ≥ 285 MPa YS ≥ 175 MPa ≥ 22 % EN
GB/T 3087 20G TS ≥ 375 MPa YS ≥ 245 MPa ≥ 30 % GB/T

Applicable Standards

  • ASTM A179 / ASME SA179 — Seamless cold-drawn low-carbon steel tubes for tubular heat-exchangers and condensers.

  • EN 10216-1 / EN 10216-2 — Seamless steel tubes for pressure purposes.

  • GB/T 3087 — Seamless steel tubes for heat-exchangers.

  • Additional manufacturing and NDT standards depending on customer requirements (flattening, flaring, hydrostatic, eddy-current, visual inspection).

Application Areas

Overview

This type of carbon steel L-foot finned tubing is suitable for a variety of industrial radiator and heat-exchange applications where one side is a process fluid (hot liquid, steam, thermal oil) and the other side is ambient or forced air.

Specific Uses

  • Industrial radiators for hot water/steam heating.

  • Air coolers and after-coolers in petrochemical and refinery installations.

  • Waste heat recovery units such as economisers and air pre-heaters.

  • HVAC and large-building heating/cooling systems.

  • Process drying and hot-air systems in textile, printing, chemical and food industries.

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 1

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 2     L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 3

 

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 4     L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 5

 

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 6

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 7

 

Q: Are you trading company or manufacturer ?

A: manufacturer,also can do trading.

 

Q: How long is your delivery time?

A: Generally speaking,it is 10-15 days if the goods are in stock,or it is 30-40 days if the goods are not in stock, it is according to quantity.

 

Q: Do you provide samples? is it free or extra ?

A: Yes, we could offer the sample for free charge but need pay the cost of freight.

 

Q: What is your terms of payment ?

A: Payment<=2000USD, 100% in advance. Payment>=2000USD, 30% T/T in advance ,balance before shippment.

If you have another question, pls feel free to contact with me.

Products
PRODUCTS DETAILS
L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators
MOQ: 1 Tons
Price: 800-1000 USD/Tons
Standard Packaging: In bundles or in wooden boxes.
Delivery Period: 20-30days upon products
Payment Method: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Capacity: 60000 Ton/Tons per Year
Detail Information
Place of Origin
Zhejiang/China
Brand Name
TORICH
Certification
ISO9001, ISO14001, TS16949
Model Number
L Finned Tube
Application:
Industrial Radiators
Technique:
Hot Rolled,Cold Drawn,Cold Rolled,TIG Welded/ Plasma Welded
Thickness:
0.6 - 50.0 Mm
Standard:
ASTM,DIN,JIS,GB,API
Alloy Or Not:
Non-alloy
Section Shape:
Round
Secondary Or Not:
Non-secondary
Outer Diameter(round):
10.3 - 813 Mm
Special Pipe:
Boiler Tubes
Grade:
A179 A192 P235 20G
Material:
Carbon Steel Tube
Type:
Heat Exchanger Tube
Length:
5.8m 8m 12m Uased Frequently Or Customized,6 Meters Or As Customers Request
Minimum Order Quantity:
1 Tons
Price:
800-1000 USD/Tons
Packaging Details:
In bundles or in wooden boxes.
Delivery Time:
20-30days upon products
Payment Terms:
L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability:
60000 Ton/Tons per Year
Product Description

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 0

 

L-Footed Fin Tubing (Carbon Steel) for Industrial Radiators

Material Overview

This product is a helical finned tube featuring an “L-foot” style fin (also called L-type/wrap-on fin) wound around a carbon steel base tube. The fin foot forms an L-shaped contact on the tube surface, providing robust mechanical contact between fin and tube and hence enhanced heat transfer and corrosion resistance.
It is used as a heat‐exchange element in industrial radiators, air coolers, condensers, waste heat recovery units, etc., where a fluid (liquid or gas) inside the tube transfers heat to air or another external medium via the finned outer surface.

Specifications

Typical specification ranges (for L-foot / L-type fin tubes) are as follows:

  • Tube outside diameter (OD): ~ 19 mm to ~ 51 mm (≈ ¾″ to 2″)

  • Wall thickness of base tube: depends on OD but for carbon steel heat exchanger tube, e.g. ASTM A179 seamless cold-drawn, typical minimum wall ~2.4 mm for 25.4 mm OD.

  • Fin height: typically 10 mm to 16 mm (≈0.4″ to 0.63″)

  • Fin thickness: typically ~0.3 mm to ~0.5 mm (≈0.012″ to 0.02″)

  • Fin pitch (spacing): e.g., 3 FPI to 11 FPI (fins per inch) ≈ 100 to 433 fins per meter.

  • Tube length: up to 22 000 mm (≈72 ft) in some manufacturers.

  • Typical base tube carbon steel grades: SA179, SA192, SA210A1/C, SA106Gr.B.

Major Features

  • High heat‐transfer efficiency: The L-foot fin significantly increases outer surface area and creates a strong bond with the base tube, enhancing conduction from tube to fin and convection from fin to outside medium.

  • Compact design: Because the fin increases surface area, fewer tubes (or smaller radiator volume) can achieve required heat duty compared to bare tubes.

  • Enhanced bonding & durability: The “L” foot provides stronger mechanical attachment of fin to tube than simple welded or wrapped fins, better resisting fin loosening under thermal cycling or vibration.

  • Good corrosion/erosion resistance on outer fin foot: The fin foot wraps securely around the base tube and helps protect the tube from outer‐side attack in some installations.

  • Flexibility for industrial radiator applications: Suitable for fluids such as hot water, steam, thermal oil, and gases cooled by ambient air, fans, or ducts.

Our Advantages

Here are key customer concerns and how our offering addresses them:

  • Concern: Heat transfer performance / surface area
    Advantage: Our L-foot finned tubes maximize the fin-foot contact area and ensure consistent fin geometry (height, thickness, pitch) which translates to higher outer surface area per unit length and stronger conduction to the fin. This yields measurable efficiency improvements compared to standard wrapped fins.

  • Concern: Long‐term fin integrity under thermal cycling / vibration
    Advantage: The mechanical interlock of the L-foot design resists fin loosening and fatigue better. Our manufacturing uses tight process control to maintain fin bond strength and alignment, reducing maintenance and downtime.

  • Concern: Corrosion / coating / environment aggressiveness
    Advantage: We offer carbon steel base tube with L-foot fins of options (aluminum, or carbon steel fin material) and can also provide protective coatings or surface treatments. The L-foot design assists in protecting the tube outer surface. For more aggressive environments we can recommend LL-type, KL-type or other advanced fin types.

  • Concern: Custom geometry and radiator integration (tube length, fin height, spacing)
    Advantage: We support flexible customization of diameter, wall thickness, fin height/pitch, plain ends, U-bends, lengths up to ~22 m, based on your radiator layout or exchanger module design.

  • Concern: Standards & quality assurance
    Advantage: Our base tube material meets known standards (e.g., ASTM A179) with documented chemical and mechanical properties, and the finning process is traceable. We provide material certificates, test reports (flattening, flaring, hydrostatic, hardness) as required under the relevant standards.

Chemical Composition

Grade C % Mn % P % (max) S % (max)
ASTM A179 (SA179) 0.06–0.18 0.27–0.63 ≤ 0.035 ≤ 0.035
ASTM A192 (SA192) ~similar range* * * *
ASTM A210 Gr A1 (SA210A1) low C similar to SA179
EN 10216-2 P235TR1 ~0.17 (C) ~1.4 (Mn) ≤ 0.025 ≤ 0.015
GB/T 3087 20G ~0.17 ~1.4 ≤0.035 ≤0.035

* Exact composition ranges vary with sub-grades.

Mechanical Properties

Grade Tensile Strength (min) Yield Strength (min) Elongation (min) Hardness (max) Standard
ASTM A179 ≥ 325 MPa ≥ 180 MPa ≥ 35 % HRB ≤ 72 ASTM
ASTM A192 TS ~340-440 MPa ASTM
ASTM A210 Gr A1 TS ≥ 415 MPa YS ≥ 240 MPa ASTM
EN 10216-2 P235TR1 TS ≥ 285 MPa YS ≥ 175 MPa ≥ 22 % EN
GB/T 3087 20G TS ≥ 375 MPa YS ≥ 245 MPa ≥ 30 % GB/T

Applicable Standards

  • ASTM A179 / ASME SA179 — Seamless cold-drawn low-carbon steel tubes for tubular heat-exchangers and condensers.

  • EN 10216-1 / EN 10216-2 — Seamless steel tubes for pressure purposes.

  • GB/T 3087 — Seamless steel tubes for heat-exchangers.

  • Additional manufacturing and NDT standards depending on customer requirements (flattening, flaring, hydrostatic, eddy-current, visual inspection).

Application Areas

Overview

This type of carbon steel L-foot finned tubing is suitable for a variety of industrial radiator and heat-exchange applications where one side is a process fluid (hot liquid, steam, thermal oil) and the other side is ambient or forced air.

Specific Uses

  • Industrial radiators for hot water/steam heating.

  • Air coolers and after-coolers in petrochemical and refinery installations.

  • Waste heat recovery units such as economisers and air pre-heaters.

  • HVAC and large-building heating/cooling systems.

  • Process drying and hot-air systems in textile, printing, chemical and food industries.

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 1

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 2     L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 3

 

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 4     L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 5

 

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 6

L Finned Tube Carbon Steel L-Footed Finned Tubing For Industrial Radiators 7

 

Q: Are you trading company or manufacturer ?

A: manufacturer,also can do trading.

 

Q: How long is your delivery time?

A: Generally speaking,it is 10-15 days if the goods are in stock,or it is 30-40 days if the goods are not in stock, it is according to quantity.

 

Q: Do you provide samples? is it free or extra ?

A: Yes, we could offer the sample for free charge but need pay the cost of freight.

 

Q: What is your terms of payment ?

A: Payment<=2000USD, 100% in advance. Payment>=2000USD, 30% T/T in advance ,balance before shippment.

If you have another question, pls feel free to contact with me.